Velocity Sensor Fault-Tolerant Controller for Induction Machine Using Intelligent Voting Algorithm

被引:7
|
作者
Alyoussef, Fadi [1 ]
Akrad, Ahmad [2 ]
Sehab, Rabia [2 ]
Morel, Cristina [2 ]
Kaya, Ibrahim [3 ]
机构
[1] Dicle Univ, Inst Nat & Appl Sci, Elect & Elect Engn Dept, TR-21280 Diyarbakir, Turkey
[2] Ecole Super Tech Aeronaut & Construct Automobile, ESTACA Lab, F-53000 Laval, France
[3] Dicle Univ, Fac Engn, Elect & Elect Engn Dept, TR-21280 Diyarbakir, Turkey
关键词
induction machine; mechanical sensor failure; fault-tolerant control; sensorless control; back-stepping controller; sliding mode observer; extended kalman filter; neural networks; fuzzy logic; voting algorithms; reliability; performance; SLIDING-MODE CONTROL; MOTOR DRIVE; SPEED; OBSERVERS; SOFTWARE;
D O I
10.3390/en15093084
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Nowadays, induction machines (IMs) are widely used in industrial and transportation applications (electric or hybrid ground vehicle or aerospace actuators) thanks to their significant advantages in comparison to other technologies. Indeed, there is a large demand for IMs because of their reliability, robustness, and cost-effectiveness. The objective of this paper is to improve the reliability and performance of the three-phase induction machine in case of mechanical sensor failure. Moreover, this paper will discuss the development and proposal of a fault-tolerant controller (FTC), based on the combination of a vector controller, two virtual sensors (an extended Kalman filter, or EKF, and a sliding mode observer, or SMO) and a neural voting algorithm. In this approach, the vector controller is based on a new structure of a back-stepping sliding mode controller, which incorporates a double integral sliding surface to improve the performance of the induction machine in faulty operation mode. More specifically, this controller improves the machine performance in terms of having a fast response, fewer steady-state errors, and a robust performance in the existence of uncertainty. In addition, two voting algorithms are suggested in this approach. The first is based on neural networks, which are insensitive to parameter variations and do not need to set a threshold. The second one is based on fuzzy logic. Finally, validation is carried out by simulations in healthy and faulty operation modes to prove the feasibility of the proposed FTC.
引用
收藏
页数:18
相关论文
共 50 条
  • [21] New Fault-Tolerant Induction Motor Control Architecture for Current Sensor Fault in Electric Vehicle
    Rkhissi-Kammoun, Yosra
    Ghommam, Jawhar
    Boukhnifer, Moussa
    Mnif, Faisal
    2018 15TH INTERNATIONAL MULTI-CONFERENCE ON SYSTEMS, SIGNALS AND DEVICES (SSD), 2018, : 65 - 70
  • [22] On the design of a fault-tolerant flight controller
    Yu, XH
    6TH WORLD MULTICONFERENCE ON SYSTEMICS, CYBERNETICS AND INFORMATICS, VOL XII, PROCEEDINGS: INDUSTRIAL SYSTEMS AND ENGINEERING II, 2002, : 199 - 202
  • [23] Self-Tuning Observer for Sensor Fault-Tolerant Control of Induction Motor Drive
    Kuchar, Martin
    Palacky, Petr
    Simonik, Petr
    Strossa, Jan
    ENERGIES, 2021, 14 (09)
  • [24] Classification of Single Current Sensor Failures in Fault-Tolerant Induction Motor Drive Using Neural Network Approach
    Skowron, Maciej
    Teler, Krystian
    Adamczyk, Michal
    Orlowska-Kowalska, Teresa
    ENERGIES, 2022, 15 (18)
  • [25] Fault-Tolerant Sensorless Control of Position Sensor Failure for Permanent Magnet Vernier Machine
    Yu, Ke
    Fan, Ying
    Chen, Junlei
    Wang, Yueqi
    2020 23RD INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS), 2020, : 1251 - 1256
  • [26] Intelligent fault-tolerant control using adaptive and learning methods
    Diao, YX
    Passino, KM
    CONTROL ENGINEERING PRACTICE, 2002, 10 (08) : 801 - 817
  • [27] Efficient Fault-Tolerant Topology Reconfiguration Using a Maximum Flow Algorithm
    Ren, Yu
    Liu, Leibo
    Yin, Shouyi
    Han, Jie
    Wei, Shaojun
    ACM TRANSACTIONS ON RECONFIGURABLE TECHNOLOGY AND SYSTEMS, 2015, 8 (03)
  • [28] Velocity-Free State Feedback Fault-Tolerant Control for Satellite with Actuator and Sensor Faults
    Liu, Mingjun
    Zhang, Aihua
    Xiao, Bing
    SYMMETRY-BASEL, 2022, 14 (01):
  • [29] Fault-Tolerant Control of Five-Phase Open-End Induction Machine Drive with A Floating Capacitor
    Sun, Xiangwen
    Liu, Zicheng
    Jiang, Dong
    Li, An
    2020 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2020, : 4897 - 4902
  • [30] Easy Hall position sensor fault-tolerant control algorithm for brushless DC drives
    Lv, Degang
    Li, Song
    Du, Zeyuan
    IEICE ELECTRONICS EXPRESS, 2019, 16 (06):